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Article

Chaotic Image Encryption by Intra-Channel Diffusion and Inter-Channel Confusion

by
Javier Alberto Vargas Valencia
1,
Carlos Alberto Marín Arango
2,
Jairo David García
3,*,
Rafael Uribe Guerra
4 and
Luis Fernando Duque Gómez
1
1
Centro de Ciencias de la Computación, Facultad de Ciencias Exactas y Aplicadas, Instituto Tecnológico Metropolitano (ITM), Calle 73 No. 76A-354, Medellín 054959, Colombia
2
Instituto de Matemáticas y Estadística, Facultad de Ciencias Exactas y Naturales, Universidad de Antioquia, Calle 70 No 52-51, Medellín 050034, Colombia
3
Ciencia 5D, Calle 46 No 81-38, Int 202, Medellín 050032, Colombia
4
Departamento de Física, Facultad de Ciencias Naturales, Universidad de Atacama, Copayapu 485, Copiapó 050034, Chile
*
Author to whom correspondence should be addressed.
J. Cybersecur. Priv. 2026, 6(3), 101; https://doi.org/10.3390/jcp6030101
Submission received: 18 March 2026 / Revised: 31 May 2026 / Accepted: 3 June 2026 / Published: 8 June 2026
(This article belongs to the Section Cryptography and Cryptology)

Abstract

Most image encryption schemes exhibit one or more of the following limitations: keystream bias, high residual pixel correlation, pattern leakage, low sensitivity to key changes, or a security-efficiency trade-off. We present a robust image encryption framework based on a chaotic system that operates across the red, green, and blue color channels and mitigates all of the above vulnerabilities. The scheme consists of a novel integration of strong bidirectional modular diffusion, inter-channel confusion using a six-state permutation table, and Secure Hash Algorithm 256-based key derivation. Thus, we achieve the following: lossless reconstruction, near-ideal entropy, negligible adjacency correlation, high sensitivity to infinitesimal changes in both the plaintext and the secret key, a complete diffusion effect confirmed by standard differential metrics, and resilience against known- and chosen-plaintext attacks. Furthermore, the results comply with the National Institute of Standards and Technology randomness tests. These results are obtained with competitive encryption times (∼0.37 s for 512 × 512 images) without any code optimization. All of these features make the scheme promising for secure real-time visual data transmission, particularly in telemedicine and Internet of Things surveillance.
Keywords: RGB image encryption; chaotic cryptography; inter-channel confusion; modular diffusion; cryptanalysis; key-space analysis; information security RGB image encryption; chaotic cryptography; inter-channel confusion; modular diffusion; cryptanalysis; key-space analysis; information security
Graphical Abstract

Share and Cite

MDPI and ACS Style

Vargas Valencia, J.A.; Arango, C.A.M.; García, J.D.; Guerra, R.U.; Gómez, L.F.D. Chaotic Image Encryption by Intra-Channel Diffusion and Inter-Channel Confusion. J. Cybersecur. Priv. 2026, 6, 101. https://doi.org/10.3390/jcp6030101

AMA Style

Vargas Valencia JA, Arango CAM, García JD, Guerra RU, Gómez LFD. Chaotic Image Encryption by Intra-Channel Diffusion and Inter-Channel Confusion. Journal of Cybersecurity and Privacy. 2026; 6(3):101. https://doi.org/10.3390/jcp6030101

Chicago/Turabian Style

Vargas Valencia, Javier Alberto, Carlos Alberto Marín Arango, Jairo David García, Rafael Uribe Guerra, and Luis Fernando Duque Gómez. 2026. "Chaotic Image Encryption by Intra-Channel Diffusion and Inter-Channel Confusion" Journal of Cybersecurity and Privacy 6, no. 3: 101. https://doi.org/10.3390/jcp6030101

APA Style

Vargas Valencia, J. A., Arango, C. A. M., García, J. D., Guerra, R. U., & Gómez, L. F. D. (2026). Chaotic Image Encryption by Intra-Channel Diffusion and Inter-Channel Confusion. Journal of Cybersecurity and Privacy, 6(3), 101. https://doi.org/10.3390/jcp6030101

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